HR: 0800h
AN: B11A-0069 [Abstracts]
TI: Hydrologic Controls on Dissolved Organic Matter Mobilization and Transport within Undisturbed Soils
AU: * Xu, N
EM: na.xu@yale.edu
AF: Yale University, School of Forestry and Environmental Studies, 205 Prospect Street, New
Haven, CT 06511, United States
AU: Saiers, J
EM: james.saiers@yale.edu
AF: Yale University, School of Forestry and Environmental Studies, 205 Prospect Street, New
Haven, CT 06511, United States
AB:
Dissolved organic matter (DOM) in soils plays an important role in the transport of nutrients and contaminants
through the terrestrial environment. Subsurface pathways deliver a significant portion of carbon to streams that
drain forested and agricultural watersheds. Although the importance of rainfall events to the DOM soil-water flux is
well known, the hydrologic factors that govern this flux have not been fully examined. The primary purpose of this
study is to investigate the soil and rainfall characteristics controlling the mobilization and transport of DOM in
undisturbed soils. Intact soil columns including topsoil and subsoil layers were taken from the Harvard forest in
Petersham, MA. Unsaturated flow conditions were maintained by applying suction to the bottom of the soil
columns. The columns were irrigated by series of interrupted rainfall events using the same total volume of
artificial rain water. Preliminary experiments showed continuous leaching of DOM (measured by dissolved
organic carbon) with an initial peak in concentration that coincided with the passage of the wetting front. The
leached DOM was also characterized by UV absorbance, fluorescence spectroscopy in the emission mode, and
additional spectroscopic derived indexes such as the humification index. Ongoing column experiments are
focusing on the effects of rainfall intensity, frequency, and rainfall history on DOM mobilization and transport
through natural, structured soils. These investigations can elucidate the influence of factors that are associated
with climate change on DOC dynamics. Results of our analyses should also provide insight into the mechanisms
that govern DOM mobilization in soils.
DE: 1831 Groundwater quality
DE: 1865 Soils (0486)
DE: 1875 Vadose zone
DE: 1879 Watershed
DE: 4806 Carbon cycling (0428)
SC: Biogeosciences [B]
MN: 2007 Fall Meeting